Books on the topic 'Water Sensitive Urban Design'

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1

Urban storm water design. Highlands Ranch, Colo: Water Resources Publications, 2003.

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2

Handbook of Water Sensitive Planning and Design. London: Taylor and Francis, 2002.

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3

Fransje, Hooimeijer, and Toorn Vrijthoff, W. van der., eds. More urban water: Design and management of Dutch water cities. London: Taylor & Francis, 2008.

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4

Engineers, Institute of Transportation. Designing walkable urban thoroughfares: A context sensitive approach. Washington, DC: Institute of Transportation Engineers, 2010.

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5

Emmanuel, M. Rohinton. An urban approach to climate-sensitive design: Strategies for the tropics. London: Spon Press, 2005.

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6

An urban approach to climate sensitive design: Strategies for the tropics. New York: Spon Press, 2004.

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7

Coucouvinis, Jim. Urban water supply and sanitation components: Water and sanitation initiative, Indonesia : program design document. [Jakarta]: Indonesia Infrastructure Initiative, 2010.

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8

Massman, Joel W. Infiltration characteristics, performance, and design of storm water facilities. [Olympia]: Washington State Dept. of Transportation, 2001.

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9

Western Australian Water Resources Council., ed. Water sensitive residential design: An investigation into its purpose and potential in the Perth Metropolitan region. Leederville, WA: Western Australian Water Resources Council, 1990.

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10

(Jan), Feyen J., Shannon Kelly, and Neville Matthew, eds. Water and urban development paradigms: Towards an integration of engineering, design and management approaches : proceedings of the International Urban Water Conference, Heverlee, Belgium, 15-19 September, 2008. Boca Raton, Fla: CRC, 2009.

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11

Great Britain. Scottish Office Environment Department., ed. Criteria and procedures for identifying sensitive areas and less sensitive areas (Urban waste water treatment directive) and polluted waters(Nitrates directive) in Scotland: Consultation paper. [Edinburgh]: Scottish Office Environment Department, 1992.

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12

Engineering Foundation Conference on Current Practice and Design Criteria for Urban Quality Control (1988 Potosi, Mo.). Design of urban runoff quality controls: Proceedings of an Engineering Foundation Conference on Current Practice and Design Criteria for Urban Quality Control : Trout Lodge, Potosi, Missouri, July 10-15, 1988. New York, N.Y: The Society, 1989.

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13

Claytor, Richard A. Design of stormwater filtering systems. Solomons, MD (P.O. Box 1280, Solomons 20688): Chesapeake Research Consortium, 1996.

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14

Gain, W. Scott. The effects of flow-path modification on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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15

Gain, W. Scott. The effects of flow-path modificaton on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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16

Gain, W. Scott. The effects of flow-path modification on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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17

Gain, W. Scott. The effects of flow-path modificaton on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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18

Gain, W. Scott. The effects of flow-path modification on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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19

Gain, W. Scott. The effects of flow-path modificaton on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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20

Gain, W. Scott. The effects of flow-path modificaton on water-quality constituent retention in an urban stormwater detention pond and wetland system, Orlando, Florida. Tallahassee, Fla: U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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21

International, Pacific Consultants. The comprehensive master plan study on urban seismic disaster prevention and management for the Greater Tehran area in the Islamic Republic of Iran: Final report, the study on reconstruction plan for Bam water supply system. Tokyo]: Japan International Cooperation Agency, 2005.

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22

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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23

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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24

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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25

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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26

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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27

Martin, Edward H. Constituent-load changes in urban stormwater runoff routed through a detention pond-wetlands system in central Florida. Tallahassee, Fla: U.S. Dept. of the Interior, Geological Survey, 1986.

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28

Allison, Robin, and Matt Francey. WSUD engineering procedures: Stormwater. Collingwood, Victoria, Australia: CSIRO, 2005.

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29

Approaches to Water Sensitive Urban Design. Elsevier, 2019. http://dx.doi.org/10.1016/c2016-0-03594-5.

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30

Water Sensitive Urban Design Engineering Procedures: Stormwater. CSIRO Publishing, 2005.

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31

Sharma, Ashok, Ted Gardner, and Don Begbie. Approaches to Water Sensitive Urban Design: Potential, Design, Ecological Health, Urban Greening, Economics, Policies, and Community Perceptions. Elsevier Science & Technology, 2018.

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32

Approaches to Water Sensitive Urban Design: Potential, Design, Ecological Health, Urban Greening, Economics, Policies, and Community Perceptions. Elsevier, 2018.

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33

F, Wong T. H., and Engineers Australia. National Committee on Water Engineering., eds. Australian runoff quality: A guide to water sensitive urban design. Crows Nest, N.S.W: Engineers Media, 2006.

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34

Water Authority of Western Australia., Western Australia. Dept. of Planning and Urban Development., Evangelisti and Associates, and Landvision (Firm), eds. Stormwater management strategy and plans for Byford & Mundijong: Incorporating water sensitive design principles. [Australia]: Evangelisti and Associates, 1994.

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35

Stormwater management strategy and plans for Byford & Mundijong: Incorporating water sensitive design principles. Landvision, 1994.

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36

Australian Institute of Urban Studies. and Western Australian Water Resources Council., eds. Water sensitive urban design: Proceedings of a seminar held at Wanneroo, W.A. on 11th September, 1991. East Perth, W.A: The Institute, Western Australian Division, 1991.

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37

Urban Stormwater. CSIRO Publishing, 1999. http://dx.doi.org/10.1071/9780643100596.

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The intense concentration of human activity in urban areas leads to changes in both the quantity and quality of runoff that eventually reaches our streams, lakes, wetlands, estuaries and coasts. The increasing use of impervious surfaces designed to provide smooth and direct pathways for stormwater run-off, has led to greater runoff volumes and flow velocities in urban waterways. Unmanaged, these changes in the quantity and quality of stormwater can result in considerable damage to the environment. Improved environmental performance is needed to ensure that the environmental values and beneficial uses of receiving waters are sustained or enhanced. Urban Stormwater - Best-Practice Environmental Management Guidelines resulted from a collaboration between State government agencies, local government and leading research institutions. The guidelines have been designed to meet the needs of people involved in the planning, design or management of urban land uses or stormwater drainage systems. They provide guidance in ten key areas: Environmental performance objectives; Stormwater management planning; Land use planning; Water sensitive urban design; Construction site management; Business surveys; Education and awareness; Enforcement; Structural treatment measures; and Flow management. Engineers and planners within local government, along with consultants to the development industry, should find the guidelines especially useful. Government agencies should also find them helpful in assessing the performance of stormwater managers. While developed specifically for application in Victoria, Australia, the information will be of value to stormwater managers everywhere.
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38

WSUD Engineering Procedures: Stormwater. CSIRO Publishing, 2005. http://dx.doi.org/10.1071/9780643092235.

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Managing the urban water cycle needs to be underpinned by key sustainability principles of water consumption, water recycling, waste minimisation and environmental protection. The integration of urban water cycle management with urban planning and design is known as Water Sensitive Urban Design (WSUD). One of the key elements of WSUD is the management of urban stormwater, both as a resource and for the protection of receiving water ecosystems. This requires strategic planning and concept designs that are underpinned by sound engineering practices in design and construction. For each of these methods the manual provides design and maintenance procedures, typical drawings, design checklists, landscape requirements, worked examples and case studies. Additional work sheets and appendices are provided on a CD-ROM which accompanies the manual.
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39

Connellan, Geoff. Water Use Efficiency for Irrigated Turf and Landscape. CSIRO Publishing, 2013. http://dx.doi.org/10.1071/9780643106888.

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Achieving high water use efficiency in maintaining turf, trees and landscape areas is a core responsibility of open space managers. Water Use Efficiency for Irrigated Turf and Landscape provides a logical and scientifically sound approach to irrigation in urban areas in Australia. It is based on green space delivering defined outcomes using the principles of water sensitive urban design and irrigation efficiency. The book covers all stages of the water pathway – from the source to delivery into the plant root zone. Major topics include system planning, estimating water demand, water quality, irrigation systems, soil management and irrigation performance evaluation. Clearly presented explanations are included, as well as line drawings and worked examples, and a plant water use database covering more than 250 plant species. A Water Management Planning template is included to guide water managers and operators through a process that will deliver a sound plan to achieve sustainable turf, urban trees and landscapes. Best Management Practice Irrigation principles are outlined and their implementation in open space turf and landscape situations is explained. The benefits and limitations of the various methods of delivering water to plants are covered, together with case studies and guidelines for specific horticultural situations. Methodologies to evaluate irrigated sites are included along with recommended benchmark values. The book presents the latest irrigation technology, including developments in water application, control technology and environmental sensors such as weather stations, soil moisture sensors and rain sensors.
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40

Grant, Gary. Water Sensitive City. Wiley & Sons, Incorporated, John, 2016.

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41

Grant, Gary. Water Sensitive City. Wiley & Sons, Incorporated, John, 2016.

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42

Grant, Gary. Water Sensitive City. Wiley & Sons, Limited, John, 2016.

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43

Grant, Gary. Water Sensitive City. Wiley & Sons, Incorporated, John, 2016.

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44

France, Robert L., ed. Handbook of Water Sensitive Planning and Design. CRC Press, 2002. http://dx.doi.org/10.1201/9780367801342.

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45

France, Robert, ed. Handbook of Water Sensitive Planning and Design. CRC Press, 2002. http://dx.doi.org/10.1201/9781420032420.

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46

France, R. L. Handbook of Water Sensitive Planning and Design. Taylor & Francis Group, 2020.

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47

Emmanuel, Rohinton. An Urban Approach To Climate Sensitive Design. Taylor & Francis, 2012. http://dx.doi.org/10.4324/9780203414644.

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48

Yuan, Chao. Urban Wind Environment: Integrated Climate-Sensitive Planning and Design. Springer, 2018.

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49

Yuan, Chao. Urban Wind Environment: Integrated Climate Sensitive Planning and Design. Springer Singapore Pte. Limited, 2018.

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50

Hooimeijer, Fransje. More Urban Water: Design and Management of Dutch Water Cities. Taylor & Francis Group, 2014.

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